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    • 21. 发明申请
    • METHOD FOR SYSTEMATICALLY TREATING ERRORS
    • 用于系统处理错误的方法
    • US20130080104A1
    • 2013-03-28
    • US13637753
    • 2011-03-16
    • Eberhard BoehlBernd BeckerBernard Pawlok
    • Eberhard BoehlBernd BeckerBernard Pawlok
    • G06F17/00
    • G06F17/00G01D5/24452G01D5/24471G01D5/2449G01D5/2457
    • A method for systematically handling errors, and an assemblage for carrying out the method, are presented. The method serves for systematically handing errors for a goniometer in the context of the transfer of position data with a position transducer, the position transducer possessing markings that are sensed with at least one sensor; a profile being deposited in a memory region in connection with said markings; the position transducer generating as a function of its position, by way of the markings, position signals that carry, as data, parameters that are deposited into a further memory region beginning with an address pointer value of 0; said address pointer being incremented with each position signal; and a synchronization between the position signals and the profile being created, and the values stored in the profile being used to modify the number of pulses outputted to the goniometer.
    • 提出了系统地处理错误的方法,以及用于执行该方法的组合。 该方法用于在用位置传感器传送位置数据的上下文中系统地处理测角器的误差,位置传感器具有用至少一个传感器感测的标记; 轮廓被沉积在与所述标记相关联的存储区域中; 位置传感器通过标记产生作为其位置的函数的位置信号,作为数据,载入从地址指针值0开始的另外的存储区域中的参数的位置信号; 所述地址指针随每个位置信号递增; 以及位置信号和所创建的轮廓之间的同步,并且存储在轮廓中的值用于修改输出到测角器的脉冲数。
    • 23. 发明申请
    • SLIDING CONTACT RETAINING DEVICE
    • 滑动接触保持装置
    • US20100055956A1
    • 2010-03-04
    • US12200536
    • 2008-08-28
    • Peter HoelscherBernd BeckerPeter Zilch
    • Peter HoelscherBernd BeckerPeter Zilch
    • H01R13/62
    • H01R39/34H01R39/08
    • In a sliding contact retaining device for a contacting device of a rotor, the rotor can have a plurality of slip rings, wherein the contacting device serves to retain the sliding contact retaining device, and wherein an electrical contact can be established between the slip rings of the rotor and sliding contacts of the sliding contact retaining device, wherein using the sliding contact retaining device, sliding contact retainers can be disposed in a first and a second serial arrangement parallel to a rotational axis of the rotor, and wherein adjacently arranged slip rings can be contacted alternately from a sliding contact of the first serial arrangement and a sliding contact of the second serial arrangement, wherein the sliding contact retaining device has at least one holding device for receiving at least two serial arrangements of sliding contact retainers.
    • 在用于转子的接触装置的滑动接触保持装置中,转子可以具有多个滑环,其中接触装置用于保持滑动接触保持装置,并且其中可以在滑环之间建立电接触 滑动触点保持装置的转子和滑动触点,其中使用滑动触点保持装置的滑动触点保持器可以以与转子的旋转轴线平行的第一和第二串联装置设置,并且其中相邻布置的滑环可以 从第一串联装置的滑动接触和第二串联装置的滑动接触交替接触,其中滑动接触保持装置具有用于接收滑动接触保持器的至少两个串联布置的至少一个保持装置。
    • 24. 发明申请
    • METHOD FOR PRODUCTION OF CLOSURE FOR A MEDICINE BOTTLE
    • 生产医药瓶封闭件的方法
    • US20070080129A1
    • 2007-04-12
    • US11379235
    • 2006-04-19
    • Bernd Becker
    • Bernd Becker
    • B65D51/00
    • B29C45/16B29C2045/1601B29L2031/565B65D47/10B65D51/002Y10S215/03Y10T29/49885Y10T29/49888Y10T29/4998Y10T29/49982
    • A closure (1) for a medicament bottle has a cap portion (2), which can be joined to the bottle and which has at least one opening (3) closed by an elastic, puncturable sealing layer (4). The opening (3) is covered on the exterior of the cap portion by a cover element (5) which, with its edge area (6) that encircles the opening (3), is joined with positive, interlocking fit, but without material bonding with the rim (8) of the opening (3). The sealing layer touches the rear side of the covering element facing the opening in a manner that is flush, sterile and without material bonding. The closure is made by a process in which the cap portion and cover element(s) are first produced and joined together, and then the sealing layer is injected into the cap portion.
    • 用于药物瓶的封闭件(1)具有帽部分(2),其可以连接到瓶子上,并且具有至少一个开口(3),该开口(3)由弹性可刺破的密封层(4)封闭。 开口(3)通过覆盖元件(5)覆盖在盖部分的外部,盖元件(5)以其围绕开口(3)的边缘区域(6)以正的互锁配合连接,但没有材料粘合 与开口(3)的边缘(8)。 密封层以平齐,无菌和无材料接合的方式接触覆盖元件的面向开口的后侧。 封闭件通过首先制造帽盖部分和覆盖元件并连接在一起的方法制成,然后将密封层注入帽部。
    • 25. 发明授权
    • Vehicle unit and method for operating the vehicle unit
    • 用于操作车辆单元的车辆单元和方法
    • US09205809B2
    • 2015-12-08
    • US14129018
    • 2012-06-25
    • Bernd Becker
    • Bernd Becker
    • G06F12/00B60R99/00G06F21/74
    • B60R99/00G06F12/00G06F21/74
    • A vehicle unit and a method are provided for controlling vehicle functions with a microprocessor and connected memory, on which a main operating system, which forms the hardware interface for application programs, and user interactions are implemented. The microprocessor is configured in a microkernel architecture with separate partitions for a main operating system unit, a cryptographic unit and a supervision unit. The main operating system is set up in the main operating system unit, and software certificates are stored in the cryptographic unit and a verification program for verifying certificates and software packages is set up therein. A monitoring program that monitors the operation of the other partitions of the microkernel architecture is provided in the supervision unit.
    • 提供了一种车辆单元和方法,用于利用微处理器和连接的存储器控​​制车辆功能,在其上形成用于应用程序的硬件接口的主操作系统和用户交互。 微处理器配置在具有用于主操作系统单元,加密单元和监督单元的单独分区的微内核架构中。 主操作系统设置在主操作系统单元中,软件证书存储在加密单元中,并在其中建立验证证书和软件包的验证程序。 在监控单元中提供监视微内核架构的其他分区的操作的监视程序。
    • 27. 发明申请
    • Vehicle Unit And Method For Operating The Vehicle Unit
    • 车辆单元和车辆单元操作方法
    • US20140142781A1
    • 2014-05-22
    • US14129018
    • 2012-06-25
    • Bernd Becker
    • Bernd Becker
    • B60R99/00
    • B60R99/00G06F12/00G06F21/74
    • A vehicle unit and a method are provided for controlling vehicle functions with a microprocessor and connected memory, on which a main operating system, which forms the hardware interface for application programs, and user interactions are implemented. The microprocessor is configured in a microkernel architecture with separate partitions for a main operating system unit, a cryptographic unit and a supervision unit. The main operating system is set up in the main operating system unit, and software certificates are stored in the cryptographic unit and a verification program for verifying certificates and software packages is set up therein. A monitoring program that monitors the operation of the other partitions of the microkernel architecture is provided in the supervision unit.
    • 提供了一种车辆单元和方法,用于利用微处理器和连接的存储器控​​制车辆功能,在其上形成用于应用程序的硬件接口的主操作系统和用户交互。 微处理器配置在具有用于主操作系统单元,加密单元和监督单元的单独分区的微内核架构中。 主操作系统设置在主操作系统单元中,软件证书存储在加密单元中,并在其中建立验证证书和软件包的验证程序。 在监控单元中提供监视微内核架构的其他分区的操作的监视程序。
    • 29. 发明申请
    • METHOD FOR PREDICTING THE DURATION OF A FUTURE TIME INTERVAL
    • 预测未来时间间隔时间的方法
    • US20130054666A1
    • 2013-02-28
    • US13577475
    • 2011-01-12
    • Eberhard BoehlBernd BeckerBernard Pawlok
    • Eberhard BoehlBernd BeckerBernard Pawlok
    • G06F7/50G06F7/52G06F7/00
    • H02P6/34F02D41/009F02D41/0097
    • A method for predicting a value for a length of a future time interval in which a physical variable changes is described, in which at least one measured value for the length of a past time interval and an instantaneously measured value for a length of an instantaneous time interval are taken into account, m values for lengths of past time intervals being added. A first value precedes the instantaneously measured value by k−1, and an mth value precedes the instantaneously measured value by k−m. The m added values are divided by a value for a length of a past time interval which precedes the instantaneously measured value by k. A ratio of the mentioned values is formed. For determining the value to be predicted, an average error is initially added to the instantaneously measured value, forming a sum. The formed ratio is subsequently applied to this sum.
    • 描述用于预测物理变量改变的未来时间间隔的长度的值的方法,其中对于过去时间间隔的长度的至少一个测量值和瞬时时间长度的瞬时测量值 考虑间隔时间,添加过去时间间隔的长度的m值。 第一个值先于瞬时测量值k-1,第m个值先于瞬时测量值k-m。 将m个附加值除以在瞬时测量值之前的过去时间间隔的长度的值。 形成上述值的比例。 为了确定要预测的值,首先将平均误差加到瞬时测量值上,形成一个和。 形成的比率随后应用于这个总和。